GENETIC IMMUNIZATION WITH THE FREE HUMAN CHORIONIC-GONADOTROPIN BETA-SUBUNIT ELICITS CYTOTOXIC T-LYMPHOCYTE RESPONSES AND PROTECTS AGAINST TUMOR-FORMATION IN MICE

Citation
M. Geissler et al., GENETIC IMMUNIZATION WITH THE FREE HUMAN CHORIONIC-GONADOTROPIN BETA-SUBUNIT ELICITS CYTOTOXIC T-LYMPHOCYTE RESPONSES AND PROTECTS AGAINST TUMOR-FORMATION IN MICE, Laboratory investigation, 76(6), 1997, pp. 859-871
Citations number
43
Categorie Soggetti
Pathology,"Medicine, Research & Experimental
Journal title
ISSN journal
00236837
Volume
76
Issue
6
Year of publication
1997
Pages
859 - 871
Database
ISI
SICI code
0023-6837(1997)76:6<859:GIWTFH>2.0.ZU;2-4
Abstract
The free beta subunit of human chorionic gonadotropin (hCG beta) is pr oduced and secreted by human lung, bladder, and pancreatic tumors. We attempted to generate cytotoxic T lymphocytes (CTL) with activity agai nst free hCG beta-producing tumors by genetic immunization using a con struct containing a beta subunit expressing cDNA. To assess CTL activi ty in vivo, a cloned syngeneic SP2/O myeloma cell line was established that constitutively expresses the free hCG beta protein. Inoculation of this cell line into BALB/c mice produced large tumors within 2 week s. However, mice immunized with the free hCG beta expression construct demonstrated a marked reduction of tumor size and weight compared wit h animals immunized with mock DNA (''empty'' plasmid). Indeed, 30% of immunized mice were tumor-free after 3 months and thus considered long -term survivors. Inhibition of tumor growth was strongly associated wi th the level of CTL activity present in CD8(+) cells derived from the spleen. In addition, immunized mice developed high titer anti-hCG beta antibodies that neutralized the biologic effects of the intact hCG gl ycoprotein hormone on its cellular receptor as well. These results ill ustrate that substantial cellular and humoral immune responses to the free hCG beta subunit may be generated by DNA immunization. This study thus presents a potential approach to inhibiting growth of human tumo r cells that produce and secrete the free hCG beta protein.